Search results for "Active ingredient"

showing 6 items of 56 documents

Di-tert-butyl Phosphonate Route to the Antiviral Drug Tenofovir

2021

Di-tert-butyl oxymethyl phosphonates were investigated regarding their suitability for preparing the active pharmaceutical ingredient tenofovir (PMPA). First, an efficient and simple access to the crystalline di-tert-butyl(hydroxymethyl)phosphonate was developed. O-Mesylation gave high yields of the active phosphonomethylation reagent. For the synthesis of tenofovir, a two-step sequence was developed using Mg(OtBu)2 as the base for the alkylation of (R)-9-(2-hydroxypropyl)adenine. Subsequent deprotection could be achieved with aqueous acids. (Di-tert-butoxyphosphoryl)methyl methanesulfonate showed to be the most efficient electrophile tested, affording PMPA in 72% yield on a 5 g scale. The …

adefovirTert butylActive ingredientTenofovir010405 organic chemistrymedicine.drug_classOrganic Chemistryoxymethyl phosphonates010402 general chemistry01 natural sciencesCombinatorial chemistryPhosphonateArticletenofovir0104 chemical scienceschemistry.chemical_compoundantiviralschemistryphosphitesmedicineAdefovirPhysical and Theoretical ChemistryAntiviral drugmedicine.drugOrganic Process Research & Development
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Biodegradable microtablets made of low molecular weight polyglycolic acid: Bioabbaubare Mikrotabletten aus niedermolekularer Polyglycolsäure

1991

Research work in developing pharmaceutical dosage forms with biodegradable polymers seldom dealt with polyglycolic acid (PGA)1,2. This because of difficult processing procedures and low solubility of PGA in common organic solvents2,3. The only licensed product of the homoplymer in medical use is the sufgical suture Dexon®4

chemistry.chemical_classificationActive ingredientPharmaceutical technologyPolymer scienceChemistryStereochemistryDrug DiscoveryPharmaceutical SciencePolymerBiodegradationBiodegradable polymerDosage formArchiv der Pharmazie
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N-(6-Methylpyridin-2-yl)mesitylenesulfonamide and acetic acid--a salt, a cocrystal or both?

2015

In the solid obtained fromN-(6-methylpyridin-2-yl)mesitylenesulfonamide and acetic acid, the constituents interactviatwo N—H...O hydrogen bonds. The H atom situated in one of these short contacts is disordered over two positions: one of these positions is formally associated with an adduct of the neutral sulfonamide molecule and the neutral acetic acid molecule, and corresponds to a cocrystal, while the alternative site is associated with salt formation between a protonated sulfonamide molecule and deprotonated acetic acid molecule. Site-occupancy refinements and electron densities from difference Fourier maps suggest a trend with temperature, albeit of limited significance; the cocrystal i…

crystal structureStereochemistryPyridinesProtonationCrystallography X-RayCocrystalMedicinal chemistrysalt-cocrystal continuumAdductInorganic ChemistryAcetic acidchemistry.chemical_compoundDeprotonationpharmaceutically active ingredientsMaterials ChemistryMoleculesaltPhysical and Theoretical Chemistrycocrystalta116Acetic Acidchemistry.chemical_classificationSulfonamidesmesitylenesulfonamideMolecular StructureHydrogen bondHydrogen BondingCondensed Matter PhysicsSulfonamidebenzenesulfonamidechemistryIR spectroscopySaltsActa crystallographica. Section C, Structural chemistry
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Cross-Linked Imidazolium Salts as Scavengers for Palladium.

2014

Five imidazolium-based materials have been synthesised and used for the first time as palladium scavengers. Radical reactions of suitable bis-vinylimidazolium salts led to a series of insoluble materials through homo-polymerisation, immobilisation with a 3-mercaptopropyl-modified silica gel or co-polymerisation with ethylene glycol dimethylacrylate. These materials were screened as palladium scavengers with a set of palladium(0) and palladium(II) compounds in different solvents and at different starting amounts of palladium. In many cases, residual amounts of palladium were lower than 5 ppm, as requested for the manufacture of active pharmaceutical ingredients and fine chemicals. The applic…

inorganic chemicalsActive ingredientSilica gelchemistry.chemical_elementGeneral ChemistrySettore CHIM/06 - Chimica OrganicaScavenger (chemistry)chemistry.chemical_compoundchemistrySuzuki reactionIonic liquidOrganic chemistryEthylene glycolcross-coupling imidazolium salts ionic liquids palladium supported catalystsPalladiumChemPlusChem
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Role of Nutraceuticals in Hypolipidemic Therapy.

2015

Nutraceuticals are food components or active ingredients present in foods and used in therapy. This article analyzes the characteristics of the molecules with a lipid-lowering effect. The different nutraceuticals may have different mechanisms of action: inhibition of cholesterol synthesis primarily through action on the enzyme HMG-CoA reductase (policosanol, polyphenols, garlic and, above all, red yeast rice), increase in LDL receptor activity (berberine), reduction of intestinal cholesterol absorption (garlic, plant sterols, probiotics), and also the ability to interfere with bile metabolism (probiotics, guggul). Based on the different mechanisms of action, some nutraceuticals are then abl…

lcsh:Diseases of the circulatory (Cardiovascular) systemSettore MED/09 - Medicina InternaCombination therapyPharmacologyCardiovascular Medicinelipidschemistry.chemical_compoundNutraceuticalBerberinelipidRed yeast riceReviews in MedicineMedicineLDL-cholesterolPolicosanolActive ingredientnutraceuticalsbusiness.industrycardiovascular preventionClinical trialchemistrylcsh:RC666-701Intestinal cholesterol absorptionhypolipidemic therapynutraceuticalCardiology and Cardiovascular Medicinebusinessmedicine.drugFrontiers in cardiovascular medicine
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Advantages of Hyaluronic Acid and Its Combination with Other Bioactive Ingredients in Cosmeceuticals

2021

This study proposes a review on hyaluronic acid (HA) known as hyaluronan or hyaluronate and its derivates and their application in cosmetic formulations. HA is a glycosaminoglycan constituted from two disaccharides (N-acetylglucosamine and D-glucuronic acid), isolated initially from the vitreous humour of the eye, and subsequently discovered in different tissues or fluids (especially in the articular cartilage and the synovial fluid). It is ubiquitous in vertebrates, including humans, and it is involved in diverse biological processes, such as cell differentiation, embryological development, inflammation, wound healing, etc. HA has many qualities that recommend it over other substances used…

skin healthmedia_common.quotation_subjectPharmaceutical ScienceOrganic chemistrybiological activityReviewCosmeticscosmeceuticalsCosmeticsAnalytical Chemistry030207 dermatology & venereal diseases03 medical and health scienceschemistry.chemical_compound0302 clinical medicineQD241-441Drug DiscoveryHyaluronic acidhyaluronic acidanti-ageing effectSynovial fluidAnimalsHumansPhysical and Theoretical Chemistry030304 developmental biologymedia_commonchemistry.chemical_classificationActive ingredient0303 health sciencesWound Healingbioactive compoundsChemistryRegeneration (biology)Biological activitymolecular weightCosmeceuticalsAmino acidSkin Aginghyaluronan derivatesBiochemistryChemistry (miscellaneous)Molecular Medicinemoisturising effectMolecules
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